Exploring spatial distribution characteristics of Populus simonii Carr coarse roots using ground penetrating radar
Authors
DOI: https://doi.org/10.55250/Jo.vnuf.9.1.2024.018-029Keywords:
Non-destructive tool, root density, soil depth, total height, vertical planeReferences
. Lynch J. P. (2013). Steep, cheap and deep: an ideotype to optimize water and N acquisition by maize root systems. Annals of botany. 112(2): 347-357.
. Danjon F., Sinoquet H., Godin C., Colin F. & Drexhage M. (1999). Characterisation of structural tree root architecture using 3D digitising and AMAPmod software. Plant and soil. 211(2): 241-258.
. Fan C. C. & Tsai M. H. (2016). Spatial distribution of plant root forces in root-permeated soils subject to shear. Soil and Tillage Research. 156: 1-15.
. Fourcaud T., Ji J. N., Zhang Z. Q. & Stokes A. (2008). Understanding the impact of root morphology on overturning mechanisms: a modelling approach. Annals of Botany. 101(8): 1267-1280.
. Annan A. P. (2005). Ground-penetrating radar. Near-surface geophysics. Society of Exploration Geophysicists. 357-438.
. Jol H. M. (2008). Ground penetrating radar theory and applications. ed. elsevier.
. Zhou G. X., Zhu Q. K. & Ren Z. Y. (2016). Research on the distribution characteristics of coarse roots of Populus hopeiensis in the Loess Area of Northern Shaanxi based on GPR. Journal of Soil and Water Conservation. 30(2): 346-351.
. Cai S. Z., Yue X. W. & Xie C. K. (2017). Roots distribution characteristic and protection strategies of 3 kinds of ancient trees in Shanghai. Journal of Shanghai Jiaotong University (Agricultural Science). 35(4): 7-14.
. Gan M. X., Sun T. & Kang Y. X. (2016). Examination of the trunk cvity and thick root distribution of acient Platycladus orientalis in the Tomb of Yellow Emperor by ground penetrating radar technology. Journal of Northwest Forestry University. 31(4): 182-187.
. Liang X. Y., Xin Z. B., Shen H. Y. & Yan T. F. (2022). Deep soil water deficit causes Populus simonii Carr degradation in the three north shelterbelt region of China. Journal of Hydrology. 612: 128201.
. Liu Z. H., Jia G. D., Yu X. X., Lu W. W., Sun L. B., Wang Y. S. & Zierdie B. (2021). Morphological trait as a determining factor for Populus simonii Carr. to survive from drought in semi-arid region. Agricultural Water Management. 253: 106943.
. Zhang J. M., Jia G. D., Liu Z. Q., Wang D. B. & Yu X. X. (2019). Populus simonii Carr. reduces wind erosion and improves soil properties in Northern China. Forests. 10(4): 315.
. Shi K., Jia Z. Q. & Zhang H. J. (2016). Root distribution characteristics of typical sand-fixing plants in Gonghe Basin of Qinghai province. Science of Soil and Water Conversation. 14(6): 78-85.
. Liu X. & Man X. L. (2008). Distribution patterns of root systems of Populus simonii Carr. in highland of Mu Us Sand land. Science of Soil and Water Conservation. 4: 48-53.
. Cheng X. R., Huang M. B. & Shao M. A. (2008). Relationship between fine roots distribution and soil water consumption of Populus simonii and Caragana korshinkii plantation on sandy land. Science of Soil and Water Conversation. 6(5): 77-83.
. Fang O. Y., Jia H. F., Qiu H. Y. & Ren H. B. (2017). Age of arboreous Tamarix austromongolica and its growth response to environment in Tongde County of Qinghai, China. Chinese Journal of Plant Ecology. 41(7): 738.
. Sonkamble S. & Chandra S. (2021). GPR for earth and environmental applications: Case studies from India. Journal of Applied Geophysics. 193: 104422.
. Barton C. V. M. & Montagu K. D. (2004). Detection of tree roots and determination of root diameters by ground penetrating radar under optimal conditions. Tree physiology. 24(12): 1323-1331.
. Yang X. T., Yang X. B. & Zeng L. L. (2009). Ecological functions of tree root system and influencing factors on its distribution. Journal of Henan Agricultural University. 43(6): 681-690.
. Song W. F. & Wang X. Q. (2007). Review of researches on wood root system. Journal of Southwest Forestry University. 5: 8-13.
. Wang F., Ma J. P. & Ma J M. (2020). Physicochemical properties and correlations of the soils in the Populus euphratica forests with different ages in Minqin. Journal of Northwest Forestry University. 35(3): 23-28.
. Cai H. Z. (2012). The Study of Salix matsudana root distribution features in Heihe origins area. Journal of Anhui Agricultural Sciences. 40(33): 16299-16301.
. Zhang L. D. & Xu X. X. (2011). Distribution characters of Robinia pseudoacacia root in Yangou watershed in Yan'an. Journal of Northwest Forestry University. 26(2): 9-14.
. Ma L. H., Wu P. T. & Wang Y. K. (2012). Spatial pattern of root systems of dense jujube plantation with jujube age in the semiarid loess hilly region of China. Chinese Journal of Plant Ecology. 36(4): 292-301.
. Lu N. N., Wang X. J. & Zhang P. (2015). Path analysis between diameter at breast height, height and crown width of Cunninghamia lanceolata in different age. Journal of Northeast Forestry University. 43(4): 12-16.
. Li L. L., Zhou L. & He Y. S. (2022). Study on root system distribution of Camellia szechuanensis Chien based on TRU system in Nanshan Botanical Garden. Hubei Agricultural Sciences. 61(1): 122-125.
. Lu Y. Y. (2014). Study on the root system structure and the soil mechanics mechanism of Larix gmelinii. Hohhot: Inner Mongolia Agricultural University. 1: 85-96.
Metrics
Downloads
PDF Downloaded: 214